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用于全面发现保守遗传模块的基因共表达网络。

A gene-coexpression network for global discovery of conserved genetic modules.

作者信息

Stuart Joshua M, Segal Eran, Koller Daphne, Kim Stuart K

机构信息

Stanford Medical Informatics, 251 Campus Drive, Medical School Office Building X-215, Stanford, CA 94305-5329, USA.

出版信息

Science. 2003 Oct 10;302(5643):249-55. doi: 10.1126/science.1087447. Epub 2003 Aug 21.

Abstract

To elucidate gene function on a global scale, we identified pairs of genes that are coexpressed over 3182 DNA microarrays from humans, flies, worms, and yeast. We found 22,163 such coexpression relationships, each of which has been conserved across evolution. This conservation implies that the coexpression of these gene pairs confers a selective advantage and therefore that these genes are functionally related. Many of these relationships provide strong evidence for the involvement of new genes in core biological functions such as the cell cycle, secretion, and protein expression. We experimentally confirmed the predictions implied by some of these links and identified cell proliferation functions for several genes. By assembling these links into a gene-coexpression network, we found several components that were animal-specific as well as interrelationships between newly evolved and ancient modules.

摘要

为了在全球范围内阐明基因功能,我们在来自人类、果蝇、线虫和酵母的3182个DNA微阵列中鉴定了共表达的基因对。我们发现了22163个这样的共表达关系,其中每一个在进化过程中都得以保留。这种保留意味着这些基因对的共表达赋予了一种选择优势,因此这些基因在功能上是相关的。其中许多关系为新基因参与细胞周期、分泌和蛋白质表达等核心生物学功能提供了有力证据。我们通过实验证实了其中一些联系所隐含的预测,并确定了几个基因的细胞增殖功能。通过将这些联系组装成一个基因共表达网络,我们发现了几个特定于动物的组件以及新进化模块与古老模块之间的相互关系。

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